Mechanical behavior of fetal dura mater under large axisymmetric inflation
The nonlinear mechanical behavior of fetal dura mater was tested experimentally and compared to two published nonlinear material strain energy functions, the Mooney-Rivlin and the Skalak, Tozeren, Zarda, and Chien (STZC). The STZC constitutive relations best fit the behavior of the dura mater and we...
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Published in | Journal of biomechanical engineering Vol. 105; no. 1; p. 71 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
United States
01.02.1983
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Subjects | |
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Abstract | The nonlinear mechanical behavior of fetal dura mater was tested experimentally and compared to two published nonlinear material strain energy functions, the Mooney-Rivlin and the Skalak, Tozeren, Zarda, and Chien (STZC). The STZC constitutive relations best fit the behavior of the dura mater and were used to describe quantitatively its stiffness. Runge-Kutta numerical procedures were used to fit the theoretical data to the experimental results. The material's stiffness was positively correlated with fetal weight (r = 0.67, p less than 0.05). These results are discussed and directions for future research indicated. |
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AbstractList | The nonlinear mechanical behavior of fetal dura mater was tested experimentally and compared to two published nonlinear material strain energy functions, the Mooney-Rivlin and the Skalak, Tozeren, Zarda, and Chien (STZC). The STZC constitutive relations best fit the behavior of the dura mater and were used to describe quantitatively its stiffness. Runge-Kutta numerical procedures were used to fit the theoretical data to the experimental results. The material's stiffness was positively correlated with fetal weight (r = 0.67, p less than 0.05). These results are discussed and directions for future research indicated. |
Author | Bylski, D I Kriewall, T J Work, Jr, B A Melvin, J W Akkas, N |
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SubjectTerms | Biomechanical Phenomena Biomedical Engineering - instrumentation Dura Mater - physiology Female Fetus - physiology Humans Male |
Title | Mechanical behavior of fetal dura mater under large axisymmetric inflation |
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